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果蝇 MSL2 蛋白 C 端结构域的功能作用。

Functional Role of C-terminal Domains in the MSL2 Protein of Drosophila melanogaster.

机构信息

Institute of Gene Biology, Russian Academy of Sciences, Moscow, 119334, Russia.

出版信息

Biochemistry (Mosc). 2024 Apr;89(4):663-673. doi: 10.1134/S0006297924040060.

Abstract

Dosage compensation complex (DCC), which consists of five proteins and two non-coding RNAs roX, specifically binds to the X chromosome in males, providing a higher level of gene expression necessary to compensate for the monosomy of the sex chromosome in male Drosophila compared to the two X chromosomes in females. The MSL2 protein contains the N-terminal RING domain, which acts as an E3 ligase in ubiquitination of proteins and is the only subunit of the complex expressed only in males. Functional role of the two C-terminal domains of the MSL2 protein, enriched with proline (P-domain) and basic amino acids (B-domain), was investigated. As a result, it was shown that the B-domain destabilizes the MSL2 protein, which is associated with the presence of two lysines ubiquitination of which is under control of the RING domain of MSL2. The unstructured proline-rich domain stimulates transcription of the roX2 gene, which is necessary for effective formation of the dosage compensation complex.

摘要

剂量补偿复合体(DCC)由五个蛋白质和两个非编码 RNA roX 组成,它特异性地结合雄性的 X 染色体,提供更高水平的基因表达,以补偿雄性果蝇中单个性染色体与雌性中的两个 X 染色体相比的单体性。MSL2 蛋白含有 N 端的 RING 结构域,在蛋白质的泛素化中充当 E3 连接酶,并且是仅在雄性中表达的复合物的唯一亚基。研究了 MSL2 蛋白的两个 C 端结构域的功能作用,这些结构域富含脯氨酸(P 结构域)和碱性氨基酸(B 结构域)。结果表明,B 结构域使 MSL2 蛋白不稳定,这与 MSL2 的 RING 结构域控制的两个赖氨酸的泛素化有关。无规则的富含脯氨酸的结构域刺激 roX2 基因的转录,这对于有效形成剂量补偿复合体是必要的。

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